首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Kinetic analysis of bovine spleen apoferritin and recombinant H and L chain homopolymers: Iron uptake suggests early stage H chain ferroxidase activity and second stage L chain cooperation
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Kinetic analysis of bovine spleen apoferritin and recombinant H and L chain homopolymers: Iron uptake suggests early stage H chain ferroxidase activity and second stage L chain cooperation

机译:牛脾脱铁蛋白和重组H和L链均聚物的动力学分析:铁的摄入表明早期H链铁氧化酶活性和第二阶段L链合作

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Ferritin utilizes ferroxidase activity to incorporate iron. Iron uptake kinetics of bovine spleen apoferritin (H : L=1 : 1.1) were compared with those of recombinant H chain ferritin and L chain ferritin homopolymers. H chain ferritin homopolymer showed an iron uptake rate identical to bovine spleen apoferritin (0.19 and 0.21 mmol/min/mumol of protein, respectively), and both showed iron concentration-dependent uptake. In contrast, the L chain homopolymer, which lacks ferroxidase, did not incorporate iron and showed the same level of iron autoxidation in the absence of ferritin. Bovine spleen apoferritin was shown to have two iron concentration-dependent uptake pathways over a range of 0.02 - 0.25 mM ferrous ammonium sulfate (FAS) by an Eadie-Scatchard plot (v/[FAS] versus v), whereas the H chain ferritin homopolymer was found to have only one pathway. Of the two Km values found in bovine spleen apoferritin, the lower mean Km value was 9.0 muM, while that of the H chain homopolymer was 11.0 muM. H chain ferritin homopolymer reached a saturating iron uptake rate at 0.1 mM FAS, while bovine spleen apoferritin incorporated more iron even at 0.25 mM FAS. These results suggest that the intrinsic ferroxidase of ferritin plays a significant role in iron uptake, and the L chain cooperates with the H chain to increase iron uptake. [References: 24]
机译:铁蛋白利用铁氧化酶活性掺入铁。比较了牛脾脱铁蛋白(H:L = 1:1.1)与重组H链铁蛋白和L链铁蛋白均聚物的铁吸收动力学。 H链铁蛋白均聚物显示出与牛脾脱铁蛋白相同的铁吸收率(分别为0.19和0.21 mmol / min / mumol蛋白质),并且都显示出铁浓度依赖性的吸收。相反,缺乏铁氧化酶的L链均聚物不掺入铁,并且在不存在铁蛋白的情况下显示出相同水平的自氧化铁。通过Eadie-Scatchard图(v / [FAS]对v),牛脾脏载铁蛋白在0.02-0.25 mM硫酸亚铁铵(FAS)范围内具有两个铁浓度依赖的摄取途径,而H链铁蛋白均聚物被发现只有一条途径。在牛脾脱铁蛋白中发现的两个Km值中,较低的平均Km值为9.0μM,而H链均聚物的平均Km值为11.0μM。 H链铁蛋白均聚物在0.1 mM FAS时达到了饱和的铁吸收速率,而牛脾脱铁铁蛋白甚至在0.25 mM FAS时也吸收了更多的铁。这些结果表明,铁蛋白的固有铁氧化酶在铁摄取中起重要作用,并且L链与H链协同作用以增加铁摄取。 [参考:24]

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